Control System Design for Azimuth Position of Earth Station Antennas

Author:

Al-Mayyahi Auday1ORCID,Aldair Ammar1ORCID,Khalaf Zainab A.1ORCID

Affiliation:

1. University of Basrah

Abstract

Abstract Smart earth station antennas have been used for several decades in many applications, from satellite communications to space object detection and tracking. The accuracy of the azimuth position for such antennas plays a crucial role in most steerable ground station antennas. Satellite tracking and space object detection demand precise tracking capabilities from the Earth. Several methods and techniques have been developed and used in industry to control the directions of ground station antennas, including the azimuth position. The challenge of azimuth tracking is increasing with the demand for full-sky coverage and with the exponential increase in space objects, including man-made satellites and operational and nonoperational objects; thus, providing accurate tracking is a key technology that demands continuous enhancement and development. This article presents the use of a PID-proportional-integral-derivative controller, a slide mode controller and a fractional order PID controller. It also introduces a new methodology based on model predictive control (MPC). The manuscript provides the core design for each of these controllers and provides insight into the performance of each controller even in the presence of disturbance. The camel optimization algorithm (COA) was used to obtain the optimal design parameters of each controller in the considered scenarios.

Publisher

Research Square Platform LLC

Reference20 articles.

1. Antenna Control System Using Step Tracking Algorithm with H Infinity Controller;Cho C-H;Int. J. Control. Autom. Syst.,2003

2. Positioning Control of DC Servomotor-Based Antenna Using PID Tuned Compensator;Eze PC;J. Eng. Sci.,2021

3. N. Patil and D. Behere, “Real-time Implementation of PID Control Algorithm using Power Pmac Controller for Antenna Position Control System,” in IEEE 5th International Conference for Convergence in Technology, I2CT 2019, 2019, pp. 1–5. doi: 10.1109/I2CT45611.2019.9033763.

4. “Antenna azimuth position control system using PID controller & state-feedback controller approach;Uthman A;Int. J. Electr. Comput. Eng.,2018

5. “DC Servomotor-based Antenna Positioning Control System Design using Hybrid PID-LQR Controller;Aloo LA;Eur. Int. J. Sci. Technol.,2016

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